Global High Performance Inertial Sensing Market
市场规模(十亿美元)
CAGR : %
Forecast Period |
2023 –2030 |
Market Size (Base Year) |
USD 4.18 Million |
Market Size (Forecast Year) |
USD 6.38 Million |
CAGR |
|
Major Markets Players |
全球高性能惯性传感市场,按组件(加速度计、振动加速度计、磁力计和陀螺仪)、性能(战术、导航、工业和采矿、汽车)、系统(惯性导航系统、姿态和航向参考系统、惯性测量单元)、应用(铁路、航空航天、陆地运输、消费电子、工业、基础设施、军事和国防、能源和采矿、海洋、汽车、农业、医疗保健等)、最终用户(航空、国防、汽车、消费电子、工业/商业、航空航天、运输、无人系统)划分 - 行业趋势和预测到 2030 年。
高性能惯性传感市场分析和规模
高性能惯性传感可以测量物体的方向、重力和速度。它用于船舶、导弹、无人机、潜艇和飞机。出于导航、飞行控制和稳定目的,惯性测量单元 (IMU) 和其他基于高性能陀螺仪的系统已广泛应用于国防和航空航天工业。高性能惯性传感还用于其他行业,包括医疗保健、汽车、交通运输和消费电子产品,以将新功能集成到低成本 MEMS(微机电系统)加速度计和陀螺仪领域。
Data Bridge Market Research 分析认为,高性能惯性传感市场在 2022 年的价值为 418 万美元,到 2030 年将达到 638 万美元,在 2023 年至 2030 年的预测期内的复合年增长率为 5.43%。除了对市场价值、增长率、细分、地理覆盖范围和主要参与者等市场情景的见解之外,Data Bridge Market Research 策划的市场报告还包括深入的专家分析、按地理位置表示的公司生产和产能、分销商和合作伙伴的网络布局、详细和更新的价格趋势分析以及供应链和需求的缺口分析。
高性能惯性传感市场范围和细分
报告指标 |
细节 |
预测期 |
2023 至 2030 年 |
基准年 |
2022 |
历史岁月 |
2021(可定制为 2015 - 2020) |
定量单位 |
收入(百万美元)、销量(单位)、定价(美元) |
涵盖的领域 |
组件(加速度计、振动加速度计、磁力计和陀螺仪)、性能(战术、导航、工业和采矿、汽车)、系统(惯性导航系统、姿态和航向参考系统、惯性测量单元)、应用(铁路、陆地交通、航空航天、消费电子、工业、基础设施、军事和国防、能源和采矿、海洋、汽车、农业、医疗保健、其他)、最终用户(航空、国防、汽车、消费电子、工业/商业、航空航天、运输、无人系统) |
覆盖国家 |
北美洲的美国、加拿大和墨西哥、德国、法国、英国、荷兰、瑞士、比利时、俄罗斯、意大利、西班牙、土耳其、欧洲其他地区、中国、日本、印度、韩国、新加坡、马来西亚、澳大利亚、泰国、印度尼西亚、菲律宾、亚太地区 (APAC) 的其他地区、沙特阿拉伯、阿联酋、南非、埃及、以色列、中东和非洲 (MEA) 的其他地区、巴西、阿根廷和南美洲其他地区 |
涵盖的市场参与者 |
罗克韦尔自动化(美国)、霍尼韦尔国际公司(美国)、德州仪器公司(美国)、松下工业(日本)、意法半导体(瑞士)、泰科电子(瑞士)、西门子(德国)、安费诺(美国)、Dwyer Instruments LTD(美国)、博世传感器技术有限公司(德国)、ABB(瑞士)、艾默生电气公司(美国)、SICK AG(德国)、TDK 株式会社(日本)、KVH Industries, Inc.(美国)、Meggitt PLC.(英国)、诺斯罗普·格鲁曼公司(美国)、赛峰集团(法国)、通用电气公司(美国)、思科系统公司(美国)、施耐德电气(法国)、algorithmica technologies GmbH(德国) |
市场机会 |
|
市场定义
高精度惯性传感可测量技术应用的倾斜度、加速度和振动。这些可能是微型 MEMS(微机电系统),围绕硅单晶传感器元件构建,使用尖端微机械制造技术生产。物体的角速度和加速度也沿三个垂直轴显示。IMU 使用运动定律通过间接测量力来计算这些值。
高性能惯性传感市场动态
驱动程序
- 防御力的提升推动市场增长
Micro electromechanical systems (MEMS) are being used more frequently, navigational accuracy is in greater demand, and emerging nations' aerospace, business, and military sectors are expanding. The military sector controls the market for products like missile guidance, control and targeting, precision-guided weapons, tank turret stabilization, and torpedo guidance. High-end MEMS sensors are essential for military and defense applications, including small-diameter missiles, underwater navigators, and autonomous vehicles. Along with the rise in defense spending in various countries, the government's initiatives to develop a cutting-edge defense weapon platform by acquiring cutting-edge technologies like precision striking, defense electronics, and critical infrastructure protection are also anticipated to advance significantly.
- Demand for gyroscopes creates expansion
Gyroscope demand is expected to rise as more powerful, reasonably priced, and small gyroscopes become available. Gyroscopes are increasingly common because of their superior motion sensing and navigational assistance capabilities. Gyroscopes can also compute three-dimensional angular velocity. High-performance gyroscopes and IMUs are needed for oil rig exploration to provide a self-contained sensor system and exact platform stabilization solutions. During the anticipated period, this will aid in expanding the market for inertial sensing systems.
Opportunities
- Growing use of inertial sensing technology creates expansion
The demand for higher-quality, more precise inertial sensors is being driven by technology. Better location tracking, gesture recognition, and virtual and augmented reality experiences are all made possible by these sensors. Through the increasing demand for these applications, manufacturers are investing in the development of high performance inertial sensors. The demand for better quality and accuracy in these sensors is further fuelled by the growing use of inertial sensing technology in robotics, autonomous vehicles, and drones.
- The development of commercial driverless vehicles creates opportunities to grow
The need for more user-friendly equipment has grown as a result of rapid lifestyle improvement. Technology that uses inertial sensors extensively for motion sensing can help. With the development of commercial driverless vehicles, modifications to virtual presence technology, improvements to expanded reality technology, rising demand for navigation system efficiency, and the availability of miniaturized parts at reasonable prices, there will be an increase in demand for high-performance, miniaturized parts inertial sensors. Through the use of micro-fabrication and micro-machining techniques, the development of Micro Electro Mechanical Systems technology led to the miniaturization of mechanical and electromechanical components in the field of sensors and semiconductors. As a result, MEMS are now an essential component of future navigation systems, driving the growth of the high performance inertial systems market.
Restraints/Challenges
- Calibrations and maintenance can impede the market growth
To keep inertial sensors accurate and precise, they must undergo routine calibration. For some users, this calibration may be prohibitive because it takes time and requires specialized tools or knowledge. In order to ensure long-term performance and reliability, regular maintenance is also necessary, which hinders market expansion.
- High costs limits the market expansion
As with any advanced technology, high performance inertial sensors can be expensive to manufacturers, purchases and maintain. This cost to access the technology for smaller companies or individuals with limited resources which cam restrict the market growth.
- Vulnerability to errors impede the market growth
The market for inertial sensors is constrained during the aforementioned forecast period by measurement errors accumulated over time and by insufficient accuracy. For instance, MEMS inertial sensors have mechanical components that are incredibly small and only weigh a few micrograms. These components may not react to slight changes in orientation due to their lightweight. Friction and drifts consequently result in a measuring error that eventually spreads. On the other hand, temperature variations and flicker noise calibration errors are restricting the market growth.
This high performance inertial sensing market report provides details of new recent developments, trade regulations, import-export analysis, production analysis, value chain optimization, market share, impact of domestic and localized market players, analyses opportunities in terms of emerging revenue pockets, changes in market regulations, strategic market growth analysis, market size, category market growths, application niches and dominance, product approvals, product launches, geographic expansions, technological innovations in the market. To gain more info on the high performance inertial sensing market contact Data Bridge Market Research for an analyst brief, our team will help you take an informed market decision to achieve market growth.
Impact and Current Market Scenario of Raw Material Shortage and Shipping Delays
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Expected Impact of Economic Slowdown on the Pricing and Availability of Products
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Recent Developments
- In 2020, The United States Coast Guard (USCG) has officially certified for the use of the SeaFIND Inertial Navigation System from Northrop Grumman Corporation as a shipboard gyrocompass system for navigation for nations that require the International Maritime Organization's compliance. In accordance with the mutual type approval agreement between the European Community (EC) and the United States, the USCG certification includes the EC Mark of Conformity (wheel mark).
- In 2019, two new inertial measurement units (IMUs) from Honeywell were released to provide navigation in a small, lightweight package without sacrificing price. Several industrial applications, including the testing of autonomous vehicles, precision farming, surveying and mapping, pipeline inspections, platform control, and motion compensation, can use the HGuide i300 Micro-Electro-Mechanical System (MEMS) IMU. The HG4930 S-Class IMU offers high bandwidth and high data rates for optical sensors and satellite communication antennas requiring precision stabilization.
Global High Performance Inertial Sensing Market Scope
The high performance inertial sensing market is segmented on the basis of component, performance, system, application and end user. The growth amongst these segments will help you analyze meagre growth segments in the industries and provide the users with a valuable market overview and market insights to help them make strategic decisions for identifying core market applications.
Component
- Accelerometers
- Vibratory Accelerometers
- Gyroscopes
- Magnetometer
Performance
- Tactical
- Navigation
- Industrial and Mining
- Automotive
System
- Inertial Navigation Systems
- Attitude and Heading Reference Systems
- Inertial Measurement Units
Application
- Railway
- Land Transportation
- Aerospace
- Consumer Electronics
- Industrial
- Infrastructure
- Military and Defense
- Energy and Mining
- Marine
- Automotive
- Agriculture
- Healthcare
- Others
End User
- Aviation
- Defense
- Automobiles
- Consumer Electronics
- Industrial/Commercial
- Aerospace
- Transport
- Unmanned Systems
High Performance Inertial Sensing Market Regional Analysis/Insights
The high performance inertial sensing market is analysed and market size insights and trends are provided by component, performance, system, application and end user as referenced above.
The countries covered in the high performance inertial sensing market report are U.S., Canada and Mexico in North America, Germany, France, U.K., Netherlands, Switzerland, Belgium, Russia, Italy, Spain, Turkey, Rest of Europe in Europe, China, Japan, India, South Korea, Singapore, Malaysia, Australia, Thailand, Indonesia, Philippines, Rest of Asia-Pacific (APAC) in the Asia-Pacific (APAC), Saudi Arabia, U.A.E, South Africa, Egypt, Israel, Rest of Middle East and Africa (MEA) as a part of Middle East and Africa (MEA), Brazil, Argentina and Rest of South America as part of South America)
North America dominates the market and will continue to flourish its trend of dominance during the forecast period. The major factors are attributable to the region’s dominance in U.S., owing to a competing side against business professionals in fulfilling the demand of inertial sensing arrangements and the occupancy of influencing companies in the region. High-end inertial systems are also used in this region's significantly increased production of helicopters and commercial aircraft
报告的国家部分还提供了影响单个市场因素和国内市场监管变化,这些因素和变化会影响市场的当前和未来趋势。下游和上游价值链分析、技术趋势和波特五力分析、案例研究等数据点是用于预测单个国家市场情景的一些指标。此外,在提供国家数据的预测分析时,还考虑了全球品牌的存在和可用性以及它们因来自本地和国内品牌的激烈或稀缺竞争而面临的挑战、国内关税和贸易路线的影响。
竞争格局和高性能惯性传感市场份额分析
高性能惯性传感市场竞争格局提供了竞争对手的详细信息。详细信息包括公司概况、公司财务状况、产生的收入、市场潜力、研发投资、新市场计划、全球影响力、生产基地和设施、生产能力、公司优势和劣势、产品发布、产品宽度和广度、应用主导地位。以上提供的数据点仅与公司对高性能惯性传感市场的关注有关。
高性能惯性传感市场的一些主要参与者包括:
- 罗克韦尔自动化 (美国)
- 霍尼韦尔国际公司(美国)
- 德州仪器公司(美国)
- 松下工业(日本)
- 意法半导体(瑞士)
- TE Connectivity (瑞士)
- 西门子(德国)
- 安费诺 (美国)
- Dwyer Instruments LTD(美国)
- Bosch Sensortec GmbH(德国)
- ABB(瑞士)
- 艾默生电气公司(美国)
- SICK AG(德国)
- TDK 公司(日本)
- KVH Industries, Inc.(美国)
- Meggitt PLC.(英国)
- 诺斯罗普·格鲁曼公司。(美国)
- 赛峰集团(法国)
- 通用电气(美国)
- 思科系统公司(美国)
- 施耐德电气(法国)
- algorithmica technologies GmbH(德国)
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研究方法
Data collection and base year analysis are done using data collection modules with large sample sizes. The stage includes obtaining market information or related data through various sources and strategies. It includes examining and planning all the data acquired from the past in advance. It likewise envelops the examination of information inconsistencies seen across different information sources. The market data is analysed and estimated using market statistical and coherent models. Also, market share analysis and key trend analysis are the major success factors in the market report. To know more, please request an analyst call or drop down your inquiry.
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